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Evaluation of Communication Architectures for Switched Real-Time Ethernet

机译:交换式实时以太网通信体系结构评估

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Safety-critical distributed real-time applications operating with strict temporal constraints rely on deterministic networks with low latency and jitter. Traditional fieldbus systems deliver these guarantees, but they have limited compatibility with open infrastructures and limited support for high transmission rates. Ethernet technology rises as a low-cost, high-speed, and ubiquitous alternative to fieldbus systems; however, standard Ethernet requires special arbitration mechanisms to support real-time traffic because of the standard's inherent nondeterministic behavior. This work explores the associated tradeoffs for three different solutions for real-time communication over switched Ethernet. The paper presents and discusses three architectures that modify different network components, enhancing them with additional customized modules to support time-triggered communication based on Network Code. Using the NetFPGA platform as the unified prototyping technology for all the components, we developed an open-source framework to characterize each solution using experimental data for the latency, jitter, throughput, robustness, and cost in logical resources. The results provide insights to help future developers of real-time communication technology decide which components to modify according to the requirements of their applications.
机译:在严格的时间限制下运行的安全关键型分布式实时应用程序依赖于具有低延迟和抖动的确定性网络。传统的现场总线系统提供了这些保证,但是它们与开放式基础架构的兼容性有限,并且对高传输速率的支持有限。以太网技术是一种低成本,高速且无所不在的现场总线系统的替代产品。但是,由于标准固有的不确定性行为,标准以太网需要特殊的仲裁机制来支持实时流量。这项工作探讨了三种不同解决方案的权衡取舍,这些解决方案是通过交换式以太网进行实时通信的。本文介绍并讨论了三种体系结构,这些体系结构修改了不同的网络组件,并通过附加的自定义模块对其进行了增强,以支持基于网络代码的时间触发的通信。使用NetFPGA平台作为所有组件的统一原型技术,我们开发了一个开放源代码框架,使用实验数据来表征每种解决方案的延迟,抖动,吞吐量,健壮性和逻辑资源成本。结果提供了见解,可以帮助未来的实时通信技术开发人员根据其应用程序的需求决定要修改的组件。

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